SANS 6291-2008 Partial discharge measurements on power cables《电力电缆的局部放电测量》.pdf
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1、 Collection of SANS standards in electronic format (PDF) 1. Copyright This standard is available to staff members of companies that have subscribed to the complete collection of SANS standards in accordance with a formal copyright agreement. This document may reside on a CENTRAL FILE SERVER or INTRA
2、NET SYSTEM only. Unless specific permission has been granted, this document MAY NOT be sent or given to staff members from other companies or organizations. Doing so would constitute a VIOLATION of SABS copyright rules. 2. Indemnity The South African Bureau of Standards accepts no liability for any
3、damage whatsoever than may result from the use of this material or the information contain therein, irrespective of the cause and quantum thereof. ISBN 978-0-626-21061-8 SANS 6291:2008Edition 2 SOUTH AFRICAN NATIONAL STANDARD Partial discharge measurements on power cables Published by Standards Sout
4、h Africa 1 dr lategan road groenkloof private bag x191 pretoria 0001 tel: 012 428 7911 fax: 012 344 1568 international code + 27 12 www.stansa.co.za Standards South Africa SANS 6291:2008 Edition 2 Table of changes Change No. Date Scope Foreword This South African standard was approved by National Co
5、mmittee StanSA TC 66, Electric cables, in accordance with procedures of Standards South Africa, in compliance with annex 3 of the WTO/TBT agreement. This document was published in March 2008. This document supersedes SABS SM 1291:2000 (edition 1). Annex B forms an integral part of this document. Ann
6、ex A is for information only. SANS 6291:2008 Edition 2 1 Contents Page Foreword 1 Scope 3 2 Normative references 3 3 External interference 3 4 Partial discharge test on complete drum length of cable (routine test) . 4 5 Partial discharge test on cable sample lengths (type approval test). 5 Annex A (
7、informative) The design of a shielded room for partial discharge tests on power cables 6 Annex B (normative) The identification of partial discharge patterns 8 SANS 6291:2008 Edition 2 2 This page is intentionally left blank SANS 6291:2008 Edition 2 3 Partial discharge measurements on power cables 1
8、 Scope This standard specifies methods for carrying out the partial discharge test on power cables of a) complete drum lengths of cable as a routine test during manufacture, and b) sample lengths as part of a type approval test. 2 Normative references The following referenced documents are indispens
9、able for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. Information on currently valid national and international standards can be obtained from Standard
10、s South Africa. SANS 60270/IEC 60270, High-voltage test techniques Partial discharge measurements. 3 External interference The measurement of partial discharge magnitude is generally complicated by the presence of external interference, which may originate from one or more of the following sources.
11、a) Disturbances that occur when the test circuit is not energized or is energized but at zero voltage. These may result from radio transmissions, switching operations in other circuits, thyristor-controlled variable speed drives, induction furnaces, etc., and inherent noise in the test instrument it
12、self. b) Disturbances that occur only when the test circuit is energized, but which do not originate in the cable under test. These include, for example, partial discharges in the testing transformer, on the surface of HV connections, or sparking of imperfectly earthed objects in the vicinity of the
13、 test circuit. Such disturbances, which may be equivalent to individual apparent charge magnitudes of several hundred picocoulombs, may be eliminated or greatly reduced by conducting the test in a suitably shielded room (see annex A) or by the adoption of polarity discrimination methods. The basic d
14、esign of a shielded room is given in annex A. The identification of partial discharge patterns is included as annex B. SANS 6291:2008 Edition 2 4 4 Partial discharge test on complete drum length of cable (routine test) 4.1 Apparatus 4.1.1 General Local conditions will dictate whether or not it is ne
15、cessary to conduct the test in a shielded room. Where external interference is minimal, it is sometimes possible to adopt a method of detection using a balanced detection circuit, or some form of gating, or a polarity discrimination method. The background noise level of the partial discharge detecti
16、on circuit should be less than or equal to 50 % of the maximum permissible partial discharge magnitude specified. Where signal gating is employed to eliminate an unwanted signal, the gated period should not exceed 2 % of the test voltage period. If, however, several mains-synchronized interference s
17、ources are present, the blocking period may be increased to a total of 10 % of the test voltage period. 4.1.2 Test circuit One of the test circuits detailed in SANS 60270. 4.1.3 Calibrator A calibrator as detailed in SANS 60270, the calibration of which shall be certified by an accredited testing au
18、thority. 4.2 Test specimen 4.2.1 Cable A drum length of single-core or three-core cable, as required. 4.2.2 Partial discharge test terminations In the case of tests on cables that have a rated voltage of up to 33 kV, moulded rubber stress cones or a stress-relieving paint may be used, but at higher
19、voltages, deionized water terminations will probably be required. 4.3 Procedure 4.3.1 Orientation of display After having carried out complete functional checks of the test circuit, establish the position on the partial discharge detector display of the negative peak of the test waveform according t
20、o the method detailed in annex B, and rotate the ellipse so that the ellipse is oriented as shown in figure B.1. Where the detector employs a sine wave display, this procedure may be ignored. 4.3.2 Calibration With the supply to the HV source isolated, but with no safety earthing connection to the H
21、V side of the test circuit, connect the calibrator between HV and earth. Switch on the calibrator and check that calibration pulses are displayed on the elliptical trace. If the calibrator pulses are not synchronized automatically to the test waveform, adjust the pulse repetition frequency to be as
22、close as possible to twice the frequency of the supply. SANS 6291:2008 Edition 2 5 Inject calibration pulses of magnitude as close as possible to the specified maximum level, and adjust the gain of the detector amplifier to give a pulse height of about 10 mm. Switch on the internal pulse generator o
23、f the detector and inject pulses that have the same magnitude as those generated by the calibrator. Adjust the gain control of the internal pulse generator to give a pulse height on the display equal to that of the pulses generated by the calibrator. Check the linearity of the internal pulse generat
24、or by injecting pulses from the calibrator and the internal pulse generator equal to 200 % of the specified maximum partial discharge level. 4.3.3 Determination of partial discharge inception and extinction voltages Starting from zero volt or from a voltage level well below the expected partial disc
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